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An Noninvasive and Impedance-Ignored Control Strategy of the Ablation Zone in Radiofrequency Ablation Therapy

机译:射频消融治疗中消融区的无创且不受阻抗影响的控制策略

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This study proposed a control strategy of the ablation margin using the temperature of the probe, without causing additional damage. Compared with other methods, the proposed strategy is real time and impedance-ignored, thus has a better performance in practice. A theoretical model was established to obtain the temperature distribution during the treatment. Several functions were obtained by fitting the results of the simulation model, with which a preset central temperature curve corresponding to a desired ablation zone was determined to regulate the temperature of the control point. Considering the various impedances in practice, a voltage adjustment method according to the error between the preset central temperature and the practical central temperature was proposed to minimize the effect of impedances. At last, the strategy was verified with phantom experiments. The results show that all the temperatures of the control points reached to 50°C at a specific time and kept for a while, which demonstrated the strategy had a good performance within the error range allowed.
机译:这项研究提出了一种使用探针温度的消融余量的控制策略,而不会造成额外的损害。与其他方法相比,所提出的策略是实时的且无阻抗的,因此在实践中具有较好的性能。建立理论模型以获得处理过程中的温度分布。通过拟合仿真模型的结果获得了几个功能,通过这些功能,可以确定与所需消融区域相对应的预设中心温度曲线,以调节控制点的温度。实际上,考虑到各种阻抗,提出了一种根据预设中心温度与实际中心温度之间的误差的电压调整方法,以使阻抗的影响最小。最后,通过幻象实验验证了该策略。结果表明,控制点的所有温度在特定时间达到50°C,并保持一段时间,这表明该策略在允许的误差范围内具有良好的性能。

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